C12N2500/76

Method for differentiating pluripotent stem cell induced from mesenchymal stem cell into neuron

The present invention relates to a medium composition containing an Ecklonia cava extract for dedifferentiating an induced pluripotent stem cell. Also, the present invention relates to a method for differentiating an induced pluripotent stem cell, produced by using the medium composition into a neuron. When using the medium composition according to the present invention, induced pluripotent stem cells using mesenchymal stem cells can be produced efficiently, and the pluripotent stem cells which have been produced can be useful as a cell treatment agent by being capable of being differentiated into neurons.

MEDIUM COMPOSITION FOR PREPARING BOTULINUM TOXIN
20180163193 · 2018-06-14 ·

The present invention relates to a medium composition for production of botulinum toxin and, more particularly, to a medium composition for culture of Clostridium sp. capable of producing botulinum toxin. The medium composition of the present invention comprises at least one plant-derived peptone selected from the group consisting of a garden pea hydrolysate, a cotton seed hydrolysate and a wheat gluten hydrolysate. When the medium according to the present invention, which contains plant-derived peptones and minerals, is used for culture of Clostridium botulinum, the growth rate of the bacterium in the medium is about 1.5-2 times higher than that in the medium that is in current use. In addition, when botulinum toxin is produced by culturing the bacterium in the medium, infection with transmissible spongiform encephalopathy (TSE) or the like can be prevented by blocking introduction of animal-derived components.

Method for differentiating pluripotent stem cell induced from mesenchymal stem cell into chondrocyte

The present invention relates to a medium composition containing an Ecklonia cava extract for dedifferentiating an induced pluripotent stem cell. Also, the present invention relates to a method for differentiating an induced pluripotent stem cell, produced by using the medium composition into a chondrocyte. When using the medium composition according to the present invention, induced pluripotent stem cells using mesenchymal stem cells can be produced efficiently, and the pluripotent stem cells which have been produced can be useful as a cell treatment agent by being capable of being differentiated into chondrocytes.

Medium for the protein-free and serum-free cultivation of cells

A medium is described for the protein-free and serum-free cultivation of cells, especially mammalian cells, whereby the medium contains a proportion of soy hydrolysate.

Culture medium composition for improving regenerative capacity of stem cells, and stem cell culturing method using same

The present invention relates to a medium composition for enhancing the self-renewal ability of stem cells, which contains apelin, and a method of culturing stem cells using the medium composition. According to the present invention, stem cells can be effectively cultured to proliferate without changing the characteristics of the cells, and the telomerase activity of stem cells can be increased. Thus, the efficacy of cell therapy based on stem cells can be significantly improved.

CELL CULTURE MEDIUM FOR NATURAL KILLER (NK) CELLS
20240360412 · 2024-10-31 ·

The invention of the current disclosure provides cell culture medium formulations useful for the culture of Natural Killer (NK) immune cells. Also included are methods of culture, cryopreservation, and transduction of NK cells comprising said culture medium formulations.

Recombinant cell clones having increased stability and methods of making and using the same

Disclosed are a stable recombinant cell clones which are stable in serum- and protein-free medium for at least 40 generations, a biomass obtained by multiplying the stable cell clone under serum- and protein-free culturing conditions, and a method of preparing recombinant proteins by means of the biomass. Furthermore, the invention relates to a method of recovering stable recombinant cell clones.

Method for inducing tailored pluripotent stem cells using extract of plant stem cells or plant dedifferentiated stem cells, and pluripotent stem cells produced by means of the method

A method for inducing tailored pluripotent stem cells by reprogramming differentiated cells of an adult by using an extract of plant stem cells and plant dedifferentiated stem cells (callus); pluripotent stem cells produced by means of the method; and a cell therapy agent comprising the pluripotent stem cells are disclosed. It is possible to overcome ethical problems since eggs are not used in the making of pluripotent stem cells having abilities like embryonic stem cells. It is possible to produce pluripotent stem cells of ensured safety because a plant stem cell extract which above all has been verified to be harmless to the body is used. It is possible to develop an immunocompatible cell therapy agent tailored to different individuals.

COMPOSITION FOR TREATING TENDONITIS AND MANUFACTURE THEREOF
20180127722 · 2018-05-10 ·

A composition for treatment of tendonitis is provided. The composition comprises a pretreated adipose derived stem cell (ADSC), wherein the ADSC is pretreated with butylidenephthalide, and the concentration of butylidenephthalide is greater or equal to. The composition of the invention has abilities to repair damaged tendon fiber, enhance tissue regeneration, and decrease inflammation. The invention also provides a method for manufacturing a composition for treatment of tendonitis, comprising culturing an ADSC in a medium containing butylidenephthalide.

Cell for Treating Neurodegenerative Disease, Pharmaceutical Compositions Containing Thereof, and Its Application

A cell for treating neurodegenerative disease treated with angelica extract is provided. The pharmaceutical composition comprises the cell for treating neurodegenerative disease and can significantly increase and recover the number of dopaminergic neurons to achieve the goal for treating neurodegenerative disease.